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首页> 外文期刊>International journal of structural stability and dynamics >ON THE USE OF GENERALIZED BEAM THEORY TO ASSESS THE BUCKLING AND POSTBUCKLING BEHAVIOR OF LAMINATED CFRP CYLINDRICAL STIFFENED PANELS
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ON THE USE OF GENERALIZED BEAM THEORY TO ASSESS THE BUCKLING AND POSTBUCKLING BEHAVIOR OF LAMINATED CFRP CYLINDRICAL STIFFENED PANELS

机译:广义梁理论在层合CFRP圆柱加筋板屈曲和后屈曲行为评估中的应用

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This paper presents the numerical implementation and illustrates the application and potential of a nonlinear elastic generalised beam theory (GBT) beam finite formulation to analyze the postbuckling behavior of laminated CFRP composite thin-walled prismatic cylindrical panels. This formulation (i) is based on a novel GBT cross-section analysis approach, (ii) accounts for the presence of initial geometrical imperfections and (iii) adopts an incremental iterative solution procedure employing the Newton-Raphson method and an arclength control strategy. No stiffness degradation or ply failure is taken into consideration and the material is deemed linear elastic and orthotropic. Numerical results concerning the local buckling and postbuckling behavior of stiffened CFRP cylindrical panels are presented and discussed -one of these panels was experimentally tested and numerically investigated in the context of the COCOMAT project. Taking full advantage of the GBT unique modal features, one is able to (i) examine the nature of the panel structural response, which is expressed in terms of deformation mode participations, and (ii) perform analyses involving very few d.o.f. (by preselecting a small set of deformation modes). The panel buckling loads and deformed configurations obtained from the GBT analyses are validated through comparison with either experimental data or values yielded by shell finite element analyses carried out in the code ABAQUS. In order to assess how the curvature affects the panel buckling and initial postbuckling behavior, a stiffened plate having a width identical to the cylindrical panel is also analyzed and the results obtained are compared with those determined for the corresponding curved panels.
机译:本文介绍了数值实现方法,并说明了非线性弹性广义梁理论(GBT)梁有限公式在分析层压CFRP复合材料薄壁棱柱圆柱板的后屈曲特性中的应用和潜力。该公式(i)基于新颖的GBT横截面分析方法,(ii)考虑了初始几何缺陷的存在,并且(iii)采用采用牛顿-拉夫森法和弧长控制策略的增量迭代求解程序。没有考虑到刚度降低或板层破坏,并且该材料被认为是线性弹性和正交各向异性的。提出并讨论了与加筋CFRP圆柱面板的局部屈曲和后屈曲行为有关的数值结果-在COCOMAT项目的背景下,对其中之一进行了实验测试和数值研究。充分利用GBT独特的模态特征,一个人能够(i)检查面板结构响应的性质(以变形模式参与的形式表示),并且(ii)进行涉及很少的d.o.f.的分析。 (通过预选一小组变形模式)。通过与实验数据或由代码ABAQUS进行的壳有限元分析得出的值进行比较,可以验证通过GBT分析获得的面板屈曲载荷和变形构型。为了评估曲率如何影响面板的屈曲和初始的后屈曲行为,还分析了宽度与圆柱形面板相同的加劲板,并将获得的结果与为相应的弯曲面板确定的结果进行比较。

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